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Design and implementation of optical wireless communications with optically powered smart dust motes

机译:带有光学智能尘埃的光学无线通信的设计与实现

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Complete electronic and micro-mechanical systems can now be fabricated on the scale of hundreds of microns. Implementing radio frequency wireless communications with such 'smart dust' is challenging, due to the power required and the small size of any antennas that can be implemented. Optical wireless communications, using a modulated retro-reflector at the smart dust has the advantages of low-power consumption and highly directive channels that allow long communications ranges. In this paper we report the design and implementation of a communications system that uses a base station to communicate with, and power, smart dust motes, over ranges of 10s of metres. A base station that uses holographic beamsteering is described, and dust motes that use silicon ICs to provide communications, power and modulation control. Results indicate the dust mote will operate at a range of over 30m from the base station.
机译:完整的电子和微机械系统现在可以以数百微米的规模制造。由于所需的功率以及可以实现的任何天线的小尺寸,使用这种“智能尘埃”来实现射频无线通信具有挑战性。在智能尘埃上使用调制后向反射镜的光学无线通信具有低功耗和高定向信道的优势,可实现长距离通信。在本文中,我们报告了一种通信系统的设计和实现,该系统使用基站与10微米范围内的智能尘埃进行通信并为其供电。描述了一种使用全息束转向的基站,以及使用硅IC提供通信,电源和调制控制的灰尘。结果表明尘埃粒子将在距基站30m的范围内运行。

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